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Stimulus-responsive polymeric nanogels as smart drug delivery systems

机译:刺激响应性聚合物纳米凝胶作为智能药物递送系统

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摘要

Nanogels are three-dimensional nanoscale networks formed by physically or chemically cross-linking polymers. Nanogels have been explored as drug delivery systems due to their advantageous properties, such as biocompatibility, high stability, tunable particle size, drug loading capacity, and possible modification of the surface for active targeting by attaching ligands that recognize cognate receptors on the target cells or tissues. Nanogels can be designed to be stimulus responsive, and react to internal or external stimuli such as pH, temperature, light and redox, thus resulting in the controlled release of loaded drugs. This "smart" targeting ability prevents drug accumulation in non-target tissues and minimizes the side effects of the drug. This review aims to provide an introduction to nanogels, their preparation methods, and to discuss the design of various stimulus-responsive nanogels that are able to provide controlled drug release in response to particular stimuli.
机译:纳米凝胶是由物理或化学交联聚合物形成的三维纳米级网络。 由于其有利的性质,例如通过在靶细胞上附着的配体,例如通过附着靶向的配体,纳米凝胶是药物输送系统,例如生物相容性,高稳定性,可调谐粒度,药物负载能力,以及用于活性靶向的表面的可能改性。 组织。 纳米凝胶可以设计为刺激响应性,并反应内部或外部刺激,例如pH,温度,光和氧化还原,从而导致加载药物的控释释放。 这种“智能”靶向能力可防止非靶组织中的药物积累,并最大限度地减少药物的副作用。 该审查旨在提供纳米凝胶的介绍,其制备方法,并讨论各种刺激响应性纳米孔的设计,该响应纳米凝胶能够响应于特定刺激提供受控药物释放。

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